姚卓森,男,現任中國地質大學(武漢)教授
基本介紹
- 中文名:姚卓森
- 職務:中國地質大學(武漢)教授
人物經歷,主要成就,
人物經歷
姚卓森,男,博士,1990年生於山西長治,高中畢業於山西大學附屬中學,2012年於中山大學獲得學士學位,2018年於中科院地質與地球物理研究所獲得博士學位,導師為秦克章研究員,隨後在加拿大卡爾頓大學進行博士後研究工作,合作導師為James Mungall教授,回國後入職中國地質大學(武漢)資源學院。
主要從事岩漿銅鎳硫化物礦床、層狀岩體的成礦作用及相應岩漿過程的研究,重點通過熱力學模擬、流體動力學和地球化學動力學等不同的維度來探究和擴展岩漿礦床的成礦模型。目前第一作者論文11篇,主要包括Nature Communications (2)、EPSL、JGR-Solid Earth (2)、GCA、ESR、Journal of Petrology、American Mineralogist等期刊
主要成就
[1] Yao, ZS., Mungall, J.E., 2022. Magnetite layer formation in the Bushveld Complex of South Africa. Nature Communications, 13, 416. (IF=14.919, 自然子刊)
[2] Yao, Z.S., Mungall, J.E., Jenkins MC. 2021. The Rustenburg Layered Suite formed as a stack of mush with transient magma chambers. Nature Communications, 12, 505. (IF=14.919, 自然子刊)
[3] Yao, Z.S., Mungall, J.E., 2020. Flotation mechanism of sulphide melt on vapour bubbles in partially molten magmatic systems. Earth and Planetary Science Letters, 542, 116298. (IF=5.255, 自然指數期刊)
[4] Yao, Z.S., Mungall, J.E., 2021. Linking the Siberian flood basalts and giant Ni-Cu-PGE sulfide deposits at Norilsk. Journal of Geophysical Research: Solid Earth, 126, e2020JB020823. (IF=3.848, 自然指數期刊)
[5] Yao, Z.S., Qin, K.Z., Qin, W., Xue, S.C., 2019. Weak B-type olivine fabric induced by fast compaction of crystal mush in a crustal magma reservoir. Journal of Geophysical Research: Solid Earth, 124, 3530-3556. (IF=3.848, 自然指數期刊)
[6] Yao, Z.S., Mungall, J.E., 2021. Kinetic controls on the sulphide mineralization of komatiite-associated Ni-Cu-(PGE) deposits. Geochimica et Cosmochimica Acta, 305, 185-211. (IF=5.010, 自然指數期刊)
[7] Yao, Z.S., Mungall, J.E., 2022. Transport and deposition of immiscible sulfide liquid during lateral magma flow. Earth-Science Reviews, 227, 103964. (IF=12.413, 地學top期刊)
[8] Yao, Z.S., Mungall, J.E., Qin, K.Z., 2019. A preliminary model for the migration of sulfide droplets in a magmatic conduit and the significance of volatiles. Journal of Petrology, 60, 2281-2316. (IF=4.515, 岩石學top期刊)
[9] Yao, Z.S., Qin, K.Z., Mungall, J.E., 2018. Tectonic controls in Ni and Cu contents of primary mantle-derived magmas for the formation of magmatic sulfide deposits. American Mineralogist, 103: 1545-1567. (IF=3.003, 礦物學top期刊)
[10] Yao, Z.S., Qin, K.Z., Xue, S.C., 2017. Kinetic processes for plastic deformation of olivine in the Poyi ultramafic intrusion, NW China: Insights from the textural analysis of a ~1700 m fully cored succession. Lithos, 284-285: 462-476. (IF=4.004, 岩石學知名期刊)
[11] Yao, Z.S., Qin, K.Z., Xue, S.C., 2017. Genetic relationship between deformation and low-Ca content in olivine from magmatic systems: evidence from the Poyi ultramafic intrusion, NW China. Mineralogy and Petrology, 111: 909-919. (IF=1.708, 岩石學期刊)
[12] Barnes, S.J., Yao, Z.S., Mao, Y.J., Jesus, A.P., Yang, S.H., Taranovic, V., Maier, W.D., 2023. Nickel in olivine as an exploration indicator for magmatic Ni-Cu sulfide deposits: a data review and re-evaluation. American Mineralogists, 108: 1-17.
[13] Chen, C., Yao, Z.S., Wang, Y.C., 2022. Partitioning behaviors of cobalt and manganese along diverse melting paths of peridotitic and MORB-like pyroxenitic mantle. Journal of Petrology, 63, egac021.
[14] Wang, Z.J., Yao, Z.S., Jin, Z.M., Wang, Y.N., 2023. Experimental investigation on the transport of sulfide driven by melt-rock reaction in partially molten peridotite. Journal of Geophysical Research: Solid Earth, 128, 2022JB026065.
[15] Jenkins, M.C., Mungall, J.E., Zientek, M.L., Costin, G., Yao, Z.S., 2021. Origin of the J-M Reef and lower banded series, stillwater complex, Montana, USA. Precambrian Research, 367, 106457.
[16] Chen, C., Su, B.X., Wang, Y.C., Uysal, I., Yao, Z.S., 2021. Mantle melting models of the Kizildag ophiolite in SE Turkey: Two types of partial melting processes in the oceanic upper mantle of southern Neo-Tethys. Lithos, 398-399, 106348.
[17] Chen, C., Wang, Y.C., Tan, W., Yao, Z.S., 2021. Origin of chromite nodules in podiform chromitite from the Kizildag ophiolite, southern Turkey. Ore Geology Reviews, 139, 104443.
[18] Kang, Z., Qin, K.Z., Mao, Y.J., Tang, D.M., Yao Z.S., 2020. The formation of a magmatic Cu-Ni sulfide deposit in mafic intrusions at the Kalatongke, NW China: Insights from amphibole mineralogy and composition. Lithos, 352-353, 105317.
[19] Xue, S.C., Li, C.S., Qin, K.Z., Yao, Z.S., Ripley, E.M., 2018. Sub-arc mantle heterogeneity in oxygen isotopes: evidence from Permian mafic-ultramafic intrusions in the Central Asian Orogenic Belt. Contributions to Mineralogy and Petrology, 173, 94.
[20] Tian, H.C., Yang, W., Li, S.G., Wei, H.Q., Yao, Z.S., Ke, S., 2019. Approach to trace hidden paleo-weathering of basaltic crust through decoupled Mg-Sr and Nd isotopes recorded in volcanic rocks. Chemical Geology, 509, 234-248.
[21] Xue, S.C., Li, C.S., Wang, Q.F., Ripley, E.M., Yao, Z.S., 2019. Geochronology, petrology and Sr-Nd-Hf-S isotope geochemistry of the newly discovered Qixin magmatic Ni-Cu sulfide prospect, southern Central Asian Orogenic Belt, NW China. Ore Geology Reviews, 111, 103002.
[22] Mole, D.R., Barnes, S.J., Yao, Z.S., White, A.R., Maas, W.R., Kirkland, C.L., 2017. The Archean Fortescue Large Igneous Province: A result of komatiite contamination by a distinct Eo-Paleoarchean crust. Precambrian Research, 310: 365-390.
[23] Lu, G.M., Cawood, P.A., Spencer, C.J., Bekker, A., Xu, Y.G., Yao, Z.S., Wang, W., 2023. Contrasting topography of Rodinia and Gondwana recorded by continental-arc basalts. Lithos, 442-443, 107094.
[24] Xue, S.C., Niu, Y.Y., Yao, Z.S., Wang, L.Y., Zhang, X.H., Wang, Q.F., 2023. Predicting olivine formation environments using machine learning and implications for magmatic sulfide prospecting. American Mineralogists, accepted.
